Github: edutechtammy
Branch: 26SU
This course continues the fundamentals of chemistry that you learned in General Chemistry I. You will learn about topics such as chemical equilibrium; phase diagrams and spectrometry; acid-base concepts; thermodynamics; kinetics; electrochemistry; nuclear chemistry; an introduction to organic chemistry and descriptive inorganic chemistry.
Comprehensive audit of all 7 modules identifying critical issues requiring immediate attention through Summer 2027 development cycle. Modules 1, 4, and 5 were found to have critical structural/content gaps. Modules 2 and 3 hade medium importance learning objectives and structural issues. Only minor enhancements needed for modules 6 and 7.
Track the progress of the CHEM-1112 course build. Each module contains lessons, activities, and assessments designed to build understanding of general chemistry concepts.
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The course update is planned to be completed by July 25, 2027, in time for the Fall 2027 semester.
Help for humans - New Chat Session Prompt and Versioning help
When viewing the lessons offline, the images will be loaded from local files instead of Canvas URLs. To do this, a custom script is used along with a json data file to map the image names to the IDs that the Canvas compatible HTML uses.
For more information on how to set this up, please see the documentation here.
To maintain consistency across all lesson pages, this project includes a standardized template system. The template includes:
Template Files:
To create a new lesson page, simply copy the template, rename it following the m[#]-[type]-[topic].html convention, replace all placeholders, and add your content between the designated markers.
Several modules include interactive activities designed to enhance student engagement and understanding. These activities utilize JavaScript and CSS to provide a dynamic learning experience.
Try a few of the interactive activities below:This course will have significant course competency (CO) and Learning objectives (LO) upgrades targeted for fall 2027
CC and LO Update PlanningCC1.1 Determine qualifications for molecular bonding based on geometric shapes
CC2.1 Evaluate how solids and liquids interact
CC3.1 Evaluate the physical properties of mixtures
CC4.1 Evaluate the dynamics of chemical systems
CC5.1 Compare the properties of acid and bases to determine strength and solubility
CC6.1 Predict the spontaneity of chemical reactions using the three laws of thermodynamics
CC7.1 Evaluate the different kinds of batteries and nuclear reactions
Most of this section are required documents that all courses have and few are to be modified.
Updated: Jan 15Topics.
Module 1 CME Consultation Guide Updated: Jan 2026-1sp Session Lessons
M1L1 Explore: Chemical Bonding and Molecular Geometry
M1L3 Explore: Valence Bond Theory
M1L4 Explore: Molecular Orbital Theory
26-2su Session Lessons
M1 Introduction to Chemical Bonding and Molecular Geometry
M1L1 Explore: Lewis Structures
M1L2 Explore: Molecular Geometry
M1L3 Explore: Molecular Polarity
Lewis structures, VSEPR theory, and molecular polarity.
Module 2 CME Consultation Guide Updated: Jan 28M2 Explore: Molecular Geometry and Polarity
M2 Mastery Assessment: Chemical Bonding and Molecular Geometry
Feb 15 | 100 pts | Score at least 70.0
M2 Next Steps
M2 Feedback Survey
Feb 15 | 100 pts | Submit
Van der Waals forces, hydrogen bonding, and phase changes.
Module Information Not StartedM3 Introduction to Intermolecular Forces of Liquids and Solids
Reaction rates, mechanisms, and equilibrium constants.
Module Information Not startedpH calculations, buffer systems, and precipitation reactions.
Module 5 27FA Comprehensive Redesign Project
☐ M5L1 Video 3: Big Six Strong Acids Storyboard - HIGHEST PRIORITY
*************************critical acid base building priorities
☐ M5L1 Video 4: Lewis Theory Storyboard- HIGH PRIORITY
☐ M5L2 Videos 4-5: Equilibrium Calculations Storyboard- MEDIUM PRIORITY
Introduction to Acids Bases and Solubility
M1L1 Explore: Properties of Acids and Bases
M5L2 Explore: Mixing Acids and Bases
M5 Introduction to Acids, Bases, and Solubility Equilibrium
M5L1 Split Lessons (27FA Planning):
M5L2 Explore: Buffer Systems and Titrations
M5L3 Explore: Solubility Applications
Thermodynamic principles in chemical reactions and equilibrium.
Module Information Not startedRedox reactions, galvanic cells, and electrolysis.
Module 7 - SME Consultation Guide
Module Information Not startedM7 Introduction to Electrochemistry and Nuclear Chemistry
M7L2 Explore: Standard Reduction Potentials and Electromotive Force
M7L3 Explore: Nuclear Chemistry
M7 Introduction to Electrochemistry and Nuclear Chemistry
M7L2 Explore: Standard Reduction Potentials and Electromotive Force